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Determination of diesel cetane number by consensus modeling based on uninformative variable elimination

机译:基于无信息变量消除的共识模型确定柴油十六烷值

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摘要

Consensus modeling based on improved Boosting algorithm (Boosting-PLS, BPLS) combined with wavelength (variable) selection by MC-UVE (Monte Carlo-Uninformative Variable Elimination) method is applied to determination of cetane number (CN) of diesel. MC-UVE is firstly used to select characteristic variables from Near-infrared (NIR) spectra of diesel based on principles of MC simulation and UVE, and then the selected variables instead of the full spectra are used for BPLS modeling to predict results. From predicted results, the proposed MC-UVE-BPLS algorithm improves the performance of conventional linear PLS modeling in terms of accuracy and robustness, so it is more efficient and parsimonious with few numbers of useful variables when applied to the relationship between CN and diesel NIR spectra. Simultaneously, the prediction results of MC-UVE-BPLS compared with those of MC-UVE-PLS, BPLS and CPLS (Consensus modeling based on Bagging) show that MC-UVE-BPLS is superior to other models, and also verifies the efficiency of MC-UVE and improved BPLS. So the proposed MC-UVE-BPLS method provides a new approach for determination of diesel CN by NIR spectra.
机译:基于改进的Boosting算法(Boosting-PLS,BPLS)结合MC-UVE(蒙特卡罗-非信息变量消除法)的波长(变量)选择的共识模型用于确定柴油的十六烷值(CN)。首先使用MC-UVE根据MC模拟和UVE原理从柴油的近红外(NIR)光谱中选择特征变量,然后将选择的变量而不是全光谱用于BPLS建模以预测结果。从预测结果来看,所提出的MC-UVE-BPLS算法在准确性和鲁棒性方面改善了常规线性PLS建模的性能,因此将其应用于CN和柴油NIR之间的关系时,它更有效,更省力,并且有用变量数量很少。光谱。同时,与MC-UVE-PLS,BPLS和CPLS(基于Bagging的共识模型)的预测结果相比,MC-UVE-BPLS的预测结果表明MC-UVE-BPLS优于其他模型,并验证了效率。 MC-UVE和改进的BPLS。因此,本文提出的MC-UVE-BPLS方法为近红外光谱测定柴油中的CN提供了一种新方法。

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